TLV3011-EP - Enhanced Product Nanopower 1.8V Sot23 Comparator With Voltage Reference

Updated : 2020-01-09 14:22:01
Description

The TLV3011 and TLV3012 are low-power, open-drain output comparators. The devices feature an uncommitted on-chip voltage reference, have 5-µA(max) quiescent current, input common-mode range 200 mV beyond the supply rails, and single-supply operation from 1.8 V to 5.5 V. The integrated 1.242-V series voltage reference offers low 100-ppm/°C (max) drift, is stable with up to 10-nF capacitive load, and can provide up to 0.5 mA (typ) of output current.

The TLV3011 and TLV3012 are available in the tiny SOT23-6 package for space-conservative designs. The devices are specified for the temperature range of -55°C to 125°C.

Features

  • Controlled Baseline
    • One Assembly/Test Site
    • One Fabrication Site
  • Extended Temperature Performance of -55°C to 125°C
  • Enhanced Diminishing Manufacturing Sources (DMS) Support
  • Enhanced Product-Change Notification
  • Qualification Pedigree(1)
  • Low Quiescent Current = 5 µA(Max)
  • Integrated Voltage Reference = 1.242 V
  • Input Common-Mode Range = 200 mV Beyond Rails
  • Voltage Reference Initial Accuracy = 1%
  • Open-Drain Logic Compatible Output (TLV3011)
  • Push-Pull Output (TLV3012)
  • Low Supply Voltage = 1.8 V to 5.5 V
  • Fast Response Time = 6-µs Propagation Delay With 100-mV Overdrive (TLV3011: RPULLUP = 10 k)
  • Microsize Package: SOT23-6
  • APPLICATIONS
    • Battery-Powered Level Detection
    • Data Acquisition
    • System Monitoring
    • Oscillators
    • Sensor Systems
      • Smoke Detectors
      • Light Sensors
      • Alarms

(1) Component qualification in accordance with JEDEC and industry standards to ensure reliable operation over an extended temperature range. This includes, but is not limited to, Highly Accelerated Stress Test (HAST) or biased 85/85, temperature cycle, autoclave or unbiased HAST, electromigration, bond intermetallic life, and mold compound life. Such qualification testing should not be viewed as justifying use of this component beyond specified performance and environmental limits.